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High Stability Turn-Key 100 Watt Monolithic Yb Doped Laser Amplifier

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Key Features
  • Yb-doped microstructured fiber architecture
  • Pulse repetition rate 50 MHz (typical)
  • Input signal power 2 to 4 Watts
  • Output power 30 to 200 W (booster version)
  • Output peak power up to 0.5 MW
  • Output pulse energy up to 1 mJ
  • Output beam quality: M² < 1.2
  • Offered by ALPhaNOV a Laser Lab Source Marketplace Seller
  • Sold & Supported in North America by: LaserDiodeControl.com, part of the
    Laser Lab Source Marketplace Group

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Optical performance
  • Operational Wavelength: 1030 nm - 1064 nm
  • Operational Regime: Pulsed / Single-Frequency
  • Pulse Repetition Rate: 50 MHz
  • Input Signal Power: 2-4 Watts
  • Output Power: >100 Watts
  • Output Peak Power: 0.5 MW typ.
  • Output Pulse Energy: 1mJ
  • Amplifier Gain: 17-20 dB
  • Output Beam Quality: M²<1.2
Optical interfaces
  • Input Interface: High power FC/APC connector, bare fiber
  • Output Interface: End-cap, SMA connector, collimator and/or isolator
Pump specification
  • Number of diode ports: 2 or 6 (on-demand)
  • Pump diodes: Up to 60W, CW or pulsed
  • Rise/fall times: >10µs
Special requests
  • Pre-amplifying on-demand
  • Specific fiber amplifier developments on-demand
  • Possibility to build a complete laser architecture with oscillator and SHG/THG module

Product Overview:

100 Watt Monolithic Yb Doped Laser Amplifier Overview

This amplifer technology relies on a Yb-doped microstructured fiber architecture. It can be tailored to meet specific requirements in terms of power, temporal regime and other functionalities. They operate over a wavelength range of 1030nm to 1064nm and can operate in pulse / single-frequency mode. They are specified with a pulse repetition rate of 50 MHz and an input signal power of 2 watts to 4 watts. The output power of these fiber amplifiers is 30 to 200 watts (200 watts with a booster version), with an output peak power up to 0.5 MW and pulse energy up to 1 mJ. These Yb doped amplifiers offer an output beam quality M² < 1.2.

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